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    <br/>第十二章_DNA语料数据库加密技术.
    <br/> 作者: 罗瑶光, Author:Yaoguang.Luo<br/>
    <br/>

    <br/><br/>非对称概率钥匙加密

    <img class="banner_img" style="width: 100%" src="../images/5_7108/12/12_15.jpg"
         alt="浏阳德塔软件开发有限公司,罗瑶光"/>

    <br/><br/>1 非对称概率钥匙加密 利用的是 肽展公式通过酸碱概率二次和三次加密,
    加密次序的拓扑过程产生的不稳定性编码如 1变2, 2变1, 产生不可还原的因素. refer page 936
    A=V+S 1变2,
    <br/><br/>2 于是这个加密的概率钥匙可以进行前序解密, 但不可后序解密, 具备了非对称加密的条件.
    refer page 1016, 1017
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         alt="浏阳德塔软件开发有限公司,罗瑶光"/>

    <br/><br/>3 非对称概率钥匙加密适用于各种不可逆的加密场景中, 如互联网登陆认证. refer
    page 1017
    <br/><br/>4 非对称概率钥匙加密可以物理与语义进行组合加密, 增加安全级. refer page 981
    <br/><br/>Definition: Asymmetrical and Probabilistic PDE Encryption.
    <br/><br/>It determined the original text could be encrypted by using Asymmetrical and
    Probabilistic PDE (PDN extension), and this PDE process could make loop encryption.
    Because of the probabilistic way of topological calculation, the extended Initon list
    would make an irreversible swap. For example, A= V+ S was ok for the PDE-PDS swap, but
    the E= DU or E= IU then would cause an irreversible computing of probabilistic
    problem. Thus, probabilistic PDE Encryption could do a prefix workflow, but not a
    postfix workflow, It means Asymmetrical PDE Encryption. Asymmetrical and Probabilistic
    PDE Encryption did better used in the Web Session transactions. And It also could make
    an encrypted combination of physic and semantic, to promote a safe level.


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